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Comparing daylighting performances assessment of building within scale models and test modules

机译:在比例模型和测试模块中比较建筑物的采光性能评估

摘要

Physical models are commonly used to assess daylighting performance of buildings using sky simulators for purpose of research as well as practice. Recent studies have pointed out the general tendency of scale model assessments to overestimate the performance, usually expressed through work plane illuminance and daylight factor profiles, when compared to the real buildings. The cause of the discrepancy between buildings and scale models is due to several sources of experimental errors, such as modelling of building details, mocking-up of surface reflectances and glazing transmittance, as well as photometer features. To analyse the main sources of errors, a comparison of a full scale test module designed for experimentation of daylighting systems and its 1:10 scale model, placed within identical outdoor daylighting conditions, was undertaken. Several physical parameters were studied in order to determine their impact on the daylighting performance assessment. These include the accurate mocking-up of surface reflectances, the scale model location, as well as the photometric sensor properties. The experimental study shows that large discrepancies can occur between the performance figures. They lead, on average, to a relative divergence of + 60 % to + 105 % in favor of the scale model for different points located in the side lit room. Some of these discrepancies were caused by slight differences in surface reflectances and photometer cosine responses. These discrepancies were reduced to a + 30 % to + 35 % relative divergence, by putting in the effort to carefully mock up the geometrical and photometrical features of the test module. This included a sound calibration of photometric sensors, whose cosine-response appeared at the end to be responsible for the remaining relative divergence observed between the daylighting performance figures.
机译:物理模型通常用于通过天空模拟器评估建筑物的采光性能,以进行研究和实践。最近的研究指出,与真实建筑物相比,比例模型评估通常会高估性能,通常通过工作平面照度和日光系数轮廓表示。建筑物和比例模型之间差异的原因是由于实验误差的多种来源,例如建筑物细节的建模,表面反射率和玻璃透光率的模拟以及光度计的功能。为了分析错误的主要来源,比较了在相同的室外采光条件下设计用于日光系统实验的全尺寸测试模块及其1:10比例模型。为了确定它们对采光性能评估的影响,研究了几个物理参数。其中包括精确模拟表面反射率,比例模型位置以及光度传感器属性。实验研究表明,性能数据之间可能会出现较大差异。它们平均导致+ 60%到+ 105%的相对差异,有利于位于侧面照明室内不同点的比例模型。这些差异中的一些是由表面反射率和光度计余弦响应的细微差异引起的。通过努力模拟测试模块的几何和光度学特征,将这些差异减少到+ 30%至+ 35%的相对差异。其中包括对光度传感器的声音校准,其余弦响应出现在最后,是造成采光性能数据之间观察到的其余相对差异的原因。

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